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Underwater acoustic communication based on virtual time reversal and sweep-spread carrier

机译:基于虚拟时间反转和扫频载波的水下声通信

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Underwater acoustic (UWA) channel was one of the most complex wireless communication channel because of extensive multipath problem. Multipath problem will lead to severe inter-symbol interference (ISI) and frequency selective fading. To build a reliable high rate UWA communication system in multipath environment, Sweep-Spread Carrier (SSC) system based on Virtual Time Reversal Mirror (VTRM) was introduced. The system requires phase modulation for more than once in every period, so the communication rate could be enhanced. To ensure the reliability of the high rate system, Virtual Time Reversal Mirror combining with Orthogonal Matching Pursuit Channel Estimation was introduced to solve the multipath problem. The ISI in the underwater channel is suppressed because of the temporal compression and spatial focusing, resulting in the channel power focusing. The simulation experiment adopted Bellhop simulation model to verify algorithm performance, then conducting a poor experiment as a further verification. The performance of the system introduced was proved to be significantly enhanced.
机译:由于广泛的多径问题,水下声学(UWA)信道是最复杂的无线通信信道之一。多径问题将导致严重的符号间干扰(ISI)和频率选择性衰落。为了在多径环境下建立可靠的高速率西澳大学通信系统,引入了基于虚拟时间倒车镜(VTRM)的扫频载波(SSC)系统。该系统在每个周期中都需要多次进行相位调制,因此可以提高通信速率。为了保证高速率系统的可靠性,引入了虚拟时间倒车镜与正交匹配追踪信道估计相结合的方法来解决多径问题。由于时间压缩和空间聚焦,水下通道中的ISI被抑制,从而导致通道功率聚焦。仿真实验采用Bellhop仿真模型验证算法性能,然后进行较差的实验作为进一步验证。事实证明,引入的系统的性能得到了显着提高。

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